Defects and geometry in condensed matter physics
Defects and geometrical patterns embedded in orderly arrays of atoms and molecules explain important everyday phenomena such as why soap is slippery, why steel is strong, and how a liquid crystal display device works. An understanding of how to pin vortex defects in superconductors is essential for...
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Cambridge
Cambridge University Press
2002
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Thư viện lưu trữ: | Trung tâm Học liệu Trường Đại học Cần Thơ |
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LEADER | 01190nam a2200217Ia 4500 | ||
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001 | CTU_166447 | ||
008 | 210402s9999 xx 000 0 und d | ||
020 | |c 95.00 | ||
082 | |a 530.412 | ||
082 | |b N425 | ||
100 | |a Nelson, David R. | ||
245 | 0 | |a Defects and geometry in condensed matter physics | |
245 | 0 | |c David R. Nelson | |
260 | |a Cambridge | ||
260 | |b Cambridge University Press | ||
260 | |c 2002 | ||
520 | |a Defects and geometrical patterns embedded in orderly arrays of atoms and molecules explain important everyday phenomena such as why soap is slippery, why steel is strong, and how a liquid crystal display device works. An understanding of how to pin vortex defects in superconductors is essential for applications such as magnetic levitation and improved magnetic resonance imaging devised for medical diagnosis. This book discusses the crucial role played by defects and geometry in disrupting order in solids, superconductors, superfluids, liquid crystals and polymers. | ||
650 | |a Condensed matter,Vật liệu cô đặc | ||
650 | |x Defects,Khiếm khuyết | ||
904 | |i Qhieu | ||
980 | |a Trung tâm Học liệu Trường Đại học Cần Thơ |